Suppr超能文献

“失聪”听觉皮层中的单峰和跨模态可塑性。

Unimodal and cross-modal plasticity in the 'deaf' auditory cortex.

作者信息

Kral Andrej

机构信息

Laboratory of Auditory Neuroscience, Department of Neurophysiology and Pathophysiology, University Clinics Hamburg-Eppendorf, University of Hamburg, Germany.

出版信息

Int J Audiol. 2007 Sep;46(9):479-93. doi: 10.1080/14992020701383027.

Abstract

Congenital auditory deprivation leads to deficits in the auditory cortex. The present review focuses on central aspects of auditory deprivation: development, plasticity, corticocortical interactions, and cross-modal reorganization. We compile imaging data from human subjects, electroencephalographic data from cochlear implanted children, and animal research on congenital deafness. Behavioral, electroencephalographic, and imaging data in humans correspond well to data behavioral and neurophysiological data obtained from congenitally deaf cats. The available data indicate that auditory deprivation leads to 'decoupling' of the primary auditory cortex from cognitive modulation of higher-order auditory areas. Higher-order auditory areas undergo a strong cross-modal reorganization and take-over new functions. Due to these and other deficits of intrinsic microcircuitry, the cortical column can not integrate bottom-up and top-down influences in deaf auditory cortex. In the ultimate consequence perceptual learning is compromised, resulting in sensitive periods.

摘要

先天性听觉剥夺会导致听觉皮层出现缺陷。本综述聚焦于听觉剥夺的中枢方面:发育、可塑性、皮质-皮质相互作用以及跨模态重组。我们汇总了来自人类受试者的成像数据、人工耳蜗植入儿童的脑电图数据以及关于先天性耳聋的动物研究。人类的行为、脑电图和成像数据与先天性耳聋猫的行为和神经生理学数据非常吻合。现有数据表明,听觉剥夺会导致初级听觉皮层与高阶听觉区域的认知调节“脱耦”。高阶听觉区域会经历强烈的跨模态重组并承担新功能。由于内在微电路的这些及其他缺陷,皮质柱无法整合聋人听觉皮层中自下而上和自上而下的影响。最终结果是知觉学习受到损害,从而产生敏感期。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验